Y0.99Er0.01VO4 and Lu 0.99Er0.01VO4 zircon-type compounds have been synthesized by solid-state reaction starting from the parent oxides. The obtained materials are single phase, well crystallized and homogeneous in the chemical composition. The magic angle spinning-NMR characterization points toward the substitutional nature of erbium on the rare earth site. The isotropic chemical shift of 89Y in an orthovanadate is reported for the first time.

Amantea, R., Ghigna, P., Mustarelli, P., Tartara, V. (2005). Synthesis, 89Y and 51V-NMR of Er-doped zircon-type YVO4 and LuVO4. JOURNAL OF SOLID STATE CHEMISTRY, 178(5), 1692-1696 [10.1016/j.jssc.2005.03.014].

Synthesis, 89Y and 51V-NMR of Er-doped zircon-type YVO4 and LuVO4

Mustarelli P.;
2005

Abstract

Y0.99Er0.01VO4 and Lu 0.99Er0.01VO4 zircon-type compounds have been synthesized by solid-state reaction starting from the parent oxides. The obtained materials are single phase, well crystallized and homogeneous in the chemical composition. The magic angle spinning-NMR characterization points toward the substitutional nature of erbium on the rare earth site. The isotropic chemical shift of 89Y in an orthovanadate is reported for the first time.
Articolo in rivista - Articolo scientifico
51; V and ; 89; Y MAS-NMR; Luminescent materials; Solid-state reactions; Zircon-type materials;
51V and 89Y MAS-NMR; Luminescent materials; Solid-state reactions; Zircon-type materials;
English
2005
178
5
1692
1696
none
Amantea, R., Ghigna, P., Mustarelli, P., Tartara, V. (2005). Synthesis, 89Y and 51V-NMR of Er-doped zircon-type YVO4 and LuVO4. JOURNAL OF SOLID STATE CHEMISTRY, 178(5), 1692-1696 [10.1016/j.jssc.2005.03.014].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/563544
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